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Cavity ringdown laser absorption spectroscopy and time-of-flight mass spectroscopy of jet-cooled copper silicides

机译:射流冷却的硅化铜的腔衰荡激光吸收光谱和飞行时间质谱

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摘要

The cavity ringdown technique has been implemented for electronic spectroscopy of jet-cooled CuSi produced in a pulsed UV laser vaporization plasma reactor. A time-of-flight mass spectrometer is used to simultaneously monitor species produced in the supersonic expansion and allows correlation studies to be performed. Seven rotationally resolved vibronic bands have been measured near 400 nm, yielding spectroscopic constants for the 2Sigma ground and excited states. Vibronic isotope shifts, together with rotational line positions, permit the unambiguous determination of the spectral carrier and vibronic assignment. Since no ab initio studies for the CuSi molecule exist, a comparison to ab initio studies of the related NiSi molecule is presented. Time-of-flight mass spectrometric measurements indicate the facile formation of CuxSiy clusters containing multiple copper atoms, in contrast to earlier mass spectrometric work on transition metal silicides.
机译:腔衰荡技术已用于电子光谱中的脉冲紫外激光汽化等离子体反应器中产生的喷射冷却的CuSi。飞行时间质谱仪用于同时监视超音速膨胀中产生的物质,并允许进行相关性研究。已在400 nm附近测量了七个旋转分辨的振动带,得出2Sigma基态和激发态的光谱常数。振动同位素位移以及旋转线位置允许明确确定光谱载波和振动分配。由于没有针对CuSi分子的从头算研究,因此提出了与相关NiSi分子的从头算研究的比较。飞行时间质谱测量表明,包含多个铜原子的CuxSiy团簇易于形成,这与过渡金属硅化物的早期质谱研究相反。

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